Manufacturer Part Number
X9313WSIZT1
Manufacturer
Renesas Electronics America
Introduction
The X9313WSIZT1 is a high-performance digital potentiometer from Renesas Electronics America. This device offers a 32-tap, 10kΩ linear potentiometer with up/down (INC, CS) interface and non-volatile memory. Designed for a wide range of applications, the X9313WSIZT1 provides excellent performance and versatility.
Product Features and Performance
32-tap digital potentiometer with linear taper
10kΩ resistance value
Up/down (INC, CS) interface for digital control
Non-volatile memory for retaining settings
Typical wiper resistance of 40Ω
±20% resistance tolerance
±300ppm/°C temperature coefficient
Operating temperature range of -40°C to 85°C
Surface mount 8-SOIC package
Product Advantages
Precise digital control of resistance
Non-volatile memory for maintain settings
Compact surface mount package
Wide operating temperature range
Reliable and long-lasting performance
Key Reasons to Choose This Product
Excellent digital potentiometer functionality in a small footprint
Convenient non-volatile memory for hassle-free operation
Robust performance across a wide temperature range
Cost-effective solution for various applications
Trusted Renesas Electronics quality and reliability
Quality and Safety Features
Designed and manufactured to Renesas Electronics' high-quality standards
Robust construction and rigorous testing ensure long-term reliability
RoHS-compliant materials for environmental responsibility
Compatibility
The X9313WSIZT1 is compatible with a wide range of electronic systems and devices that require precise digital control of resistance.
Application Areas
Industrial automation and control systems
Audio/visual equipment
Medical devices
Test and measurement instruments
Consumer electronics
Product Lifecycle
The X9313WSIZT1 is an active product in our website's sales team portfolio. There are no immediate plans for discontinuation. Customers are advised to contact our website's sales team for information on any potential alternative or equivalent models.